Artikel

Towards performance assessment of fuel cell integration into buildings

The integration of Combined Heat and Power (CHP) systems, especially fuel cell systems, into buildings have attracted a lot of interest these last years. It is due to their higher efficiency, cleanliness and their capability for producing both valuable thermal energy and electricity, from a single source of fuel, such as natural gas or hydrogen. Their high efficiency, which can reach 85%-90%, leads to a decrease in both greenhouse gas emissions and costs when compared to the conventional methods of generating heat and electricity separately. The aim of this work is towards efficient integration of a Proton Exchange Membrane (PEM) fuel cell into buildings in order to supply it with both electricity and heat. Experiments on a system composed of fuel cell, converter, and hydrogen tank have been carried out and compared to the simulations conducted using Matlab/Simulink where the system's model has been developed. Simulation and experimental results are compared in order to show the accuracy of the models that have been developed and the efficiency of the fuel cell when operating as a CHP system to supply the building with both electricity and heat.

Language
Englisch

Bibliographic citation
Journal: Energy Reports ; ISSN: 2352-4847 ; Volume: 6 ; Year: 2020 ; Issue: 1 ; Pages: 288-293 ; Amsterdam: Elsevier

Classification
Wirtschaft
Subject
CHP system
Fuel cell
Hydrogen
Matlab/Simulink softwares

Event
Geistige Schöpfung
(who)
Boulmrharj, Sofia
Khaidar, Mohammed
Siniti, Mustapha
Bakhouya, Mohamed
Zine-dine, Khalid
Event
Veröffentlichung
(who)
Elsevier
(where)
Amsterdam
(when)
2020

DOI
doi:10.1016/j.egyr.2019.08.058
Handle
Last update
10.03.2025, 11:43 AM CET

Data provider

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ZBW - Deutsche Zentralbibliothek für Wirtschaftswissenschaften - Leibniz-Informationszentrum Wirtschaft. If you have any questions about the object, please contact the data provider.

Object type

  • Artikel

Associated

  • Boulmrharj, Sofia
  • Khaidar, Mohammed
  • Siniti, Mustapha
  • Bakhouya, Mohamed
  • Zine-dine, Khalid
  • Elsevier

Time of origin

  • 2020

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